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全范围光相干折射断层成像术。

Full-range optical coherence refraction tomography.

出版信息

Opt Lett. 2022 Feb 15;47(4):894-897. doi: 10.1364/OL.445716.

Abstract

In full-range optical coherence tomography (FROCT), the axial resolution is often superior to the lateral resolution, which is degraded by its signal processing and presents nonuniformity at different imaging depths due to the defocus effect. Optical coherence refraction tomography (OCRT) uses images from multiple angles to computationally reconstruct an image with isotropic resolution, solving the problem of image resolution anisotropy in the sub-millimeter imaging depth range. In this work, we report full-range OCRT (FROCRT), which uses full-range complex conjugate-free optical coherence tomography (OCT) images from multiple angles to reconstruct an isotropic spatial resolution image with extended imaging range. We build a system that can automatically acquire images from 360° for reconstruction. We further apply FROCRT to tape phantom, optical-cleared mouse leg bone and spinal cord samples, and aloe sample, achieving extended imaging depth and isotropic resolution. We propose FROCRT, as an extension to OCRT, will enable broader applications.

摘要

在全光相干层析成像(FROCT)中,轴向分辨率通常优于侧向分辨率,后者由于离焦效应,其信号处理会导致分辨率不均匀而退化。光学相干折射层析成像(OCRT)使用多个角度的图像进行计算重建具有各向同性分辨率的图像,解决了亚毫米成像深度范围内图像分辨率各向异性的问题。在这项工作中,我们报告了全光 OCRT(FROCRT),它使用来自多个角度的全范围复共轭自由光相干断层扫描(OCT)图像来重建具有扩展成像范围的各向同性空间分辨率图像。我们构建了一个可以自动从 360°采集图像进行重建的系统。我们进一步将 FROCRT 应用于带型仿体、光学透明鼠腿骨和脊髓样本以及芦荟样本,实现了扩展的成像深度和各向同性分辨率。我们提出 FROCRT 是 OCRT 的扩展,将能够实现更广泛的应用。

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